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6-Aminonicotinamide sensitizes human tumor cell lines to cisplatin
I I Budihardjo1, D L Walker, P A Svingen
1Division of Oncology Research, Mayo Clinic, Rochester, Minnesota 55905, USA.
Abstract:
The nicotinamide analogue 6-aminonicotinamide (6AN) is presently undergoing evaluation as a potential modulator of the action of various antineoplastic treatments. Most previous studies of this agent have focused on a three-drug regimen of chemical modulators that includes 6AN. In the present study, the effect of single-agent 6AN on the efficacy of selected antineoplastic drugs was assessed in vitro. Colony-forming assays using human tumor cell lines demonstrated that pretreatment with 30-250 microM 6AN for 18 h resulted in increased sensitivity to the DNA cross-linking agent cisplatin, with 6-, 11-, and 17-fold decreases in the cisplatin dose that diminishes colony formation by 90% being observed in K562 leukemia cells, A549 non-small cell lung cancer cells, and T98G glioblastoma cells, respectively. Morphological examination revealed increased numbers of apoptotic cells after treatment with 6AN and cisplatin compared to cisplatin alone. 6AN also sensitized cells to melphalan and nitrogen mustard but not to chlorambucil, 4-hydroperoxycyclophosphamide, etoposide, or daunorubicin. In additional studies undertaken to elucidate the mechanism underlying the sensitization to cisplatin, atomic absorption spectroscopy revealed that 6AN had no effect on the rate of removal of platinum (Pt) adducts from DNA. Instead, 6AN treatment was accompanied by an increase in Pt-DNA adducts that paralleled the degree of sensitization. This effect was not attributable to 6AN-induced decreases in glutathione or NAD+, because other agents that depleted these detoxification cofactors (buthionine sulfoximine and 3-acetylpyridine, respectively) did not increase Pt-DNA adducts. On the contrary, 6AN treatment increased cellular accumulation of cisplatin. Further experiments revealed that 6AN was metabolized to 6-aminonicotinamide adenine dinucleotide (6ANAD+). Concurrent administration of nicotinamide and 6AN had minimal effect on cellular 6AN accumulation but abolished the formation of 6ANAD+, the increase in Pt-DNA adducts, and the sensitizing effect of 6AN in clonogenic assays. These observations identify 6AN as a potential modulator of cisplatin sensitivity and suggest that the 6AN metabolite 6ANAD+ exerts this effect by increasing cisplatin accumulation and subsequent formation of Pt-DNA adducts.
Insights
The nicotinamide analogue 6-aminonicotinamide (6AN) enhances cancer cell sensitivity to cisplatin by increasing platinum-DNA adducts. This effect is mediated by its metabolite, 6-aminonicotinamide adenine dinucleotide (6ANAD+), which boosts cisplatin accumulation.
Area of Science:
- Pharmacology
- Cancer Biology
- Drug Development
Background:
- 6-aminonicotinamide (6AN) is being investigated as a modulator for antineoplastic treatments.
- Previous research often focused on 6AN within multi-drug regimens.
Purpose of the Study:
- To evaluate the effect of single-agent 6AN on the efficacy of specific antineoplastic drugs in vitro.
- To elucidate the mechanism by which 6AN sensitizes cancer cells to DNA cross-linking agents.
Main Methods:
- Colony-forming assays using human tumor cell lines (K562, A549, T98G).
- Morphological examination for apoptosis.
- Atomic absorption spectroscopy to measure platinum-DNA adducts and cellular platinum accumulation.
- Metabolic studies to identify 6AN metabolites and assess cofactor depletion.
Main Results:
- Pretreatment with 6AN significantly increased sensitivity to cisplatin (6-17 fold decrease in required dose) and melphalan, but not other agents tested.
- 6AN treatment led to increased platinum-DNA adducts and cellular cisplatin accumulation, without affecting platinum adduct removal.
- The metabolite 6-aminonicotinamide adenine dinucleotide (6ANAD+) was identified, and its formation correlated with sensitization.
Conclusions:
- Single-agent 6AN effectively modulates sensitivity to cisplatin and melphalan in vitro.
- The sensitizing effect is mediated by 6ANAD+, which increases cisplatin accumulation and platinum-DNA adduct formation.
- 6AN is a promising modulator for enhancing the efficacy of certain DNA cross-linking chemotherapy agents.